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Category: Chemical Physics Letters

NiFe@Pd/C core–shell nanoparticles with enhanced catalytic activity toward glycerol electrooxidation in alkaline media

NiFe@Pd/C core–shell nanoparticles with enhanced catalytic activity toward glycerol electrooxidation in alkaline media

Publication date: Available online 16 October 2023Source: Chemical Physics LettersAuthor(s): Stephanie Soares Aristides, Caio Vinícius da Silva Almeida, Katlin Ivon Barrios Eguiluz, Giancarlo R. Salazar-Banda

Optical properties, Judd-Ofelt analysis and energy transfer processes of Eu<sup>3+</sup> doped ZnS quantum dots

Optical properties, Judd-Ofelt analysis and energy transfer processes of Eu<sup>3+</sup> doped ZnS quantum dots

Publication date: Available online 16 October 2023Source: Chemical Physics LettersAuthor(s): K.C. Cuong, N.T.M. Thuy, Xingxiang Fan, P.V. Hao, L.K. Quynh, T.T.T. Huong, N.T. Kien, N.T.K. Van, N.T. Hien, L.N. Dung, N.X. Ca

Theoretical study on the graphitic alkyne-like metal–organic framework materials as the high-performance electrocatalysts for oxygen reduction reaction

Theoretical study on the graphitic alkyne-like metal–organic framework materials as the high-performance electrocatalysts for oxygen reduction reaction

Publication date: Available online 15 October 2023Source: Chemical Physics LettersAuthor(s): Xiaoyin Cai, Jingsong Tan, Haiye Zhu, Xiuyun Zhao, Lei Zhao, Xin Chen

DFT study on the adsorption and sensing properties of dissolved gases (H<sub>2</sub>, CO and CH<sub>4</sub>) in transformer oil on PdO-doped In<sub>2</sub>O<sub>3</sub> (1&nbsp;1&nbsp;0) surfaces

DFT study on the adsorption and sensing properties of dissolved gases (H<sub>2</sub>, CO and CH<sub>4</sub>) in transformer oil on PdO-doped In<sub>2</sub>O<sub>3</sub> (1&nbsp;1&nbsp;0) surfaces

Publication date: Available online 15 October 2023Source: Chemical Physics LettersAuthor(s): Tao He, Hongcheng Liu, Jing Zhang, Yuepeng Yang, Yujuan Hu, Ying Zhang, Kelin Hu

Functionally graded porous materials derived from MOFs based on cellulose skeleton support strategy for low energy consumption CO<sub>2</sub> separation from flue gas

Functionally graded porous materials derived from MOFs based on cellulose skeleton support strategy for low energy consumption CO<sub>2</sub> separation from flue gas

Publication date: Available online 14 October 2023Source: Chemical Physics LettersAuthor(s): Wenhao Li, Xuefei An, Jianjun Chen, Dong Fu